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Research of Sulfosulfuron and Mesosulfuron + Iodosulfuron persistance in soils with bioassay in conditions of the Central Anatolia Region

Year 2011, Volume: 51 Issue: 3, 301 - 314, 22.04.2011

Abstract

Sulfosulfuron and mesosulfuron + iodosulfuron residues, used against weeds in wheat production areas, were investigated under the conditions of the Central Anatolia Region. Herbicides were used in two different locations, in two different periods and at three rates and their residues were determined at 3, 6, 12, and 15 months after the application using a sunflower seedling bioassay. Sulfosulfuron and mesosulfuron+iodosulfuron residues decreased during the investigation period. Differences in the herbicide application times and sites are very important for both herbicides. Effects of herbicide application time on the herbicide residues in the soil were limited at 3 months, but were significant at 6, 12, and 15 months. Herbicide residues in the first site examined were higher than that in the second site.

References

  • Alonso-Prados J. L., Hernandez-Sevillano E., Llanos S., Villarroya M. and Garcia-Baudin J. M. 2002. Effects of Sulfosulfuron Soil Residues on Barley (Hordeum vulgare), Sunflower (Helianthus annuus) and Common Vetch (Vicia sativa). Crop Protection, 21 (10), 1061-1066.
  • Ashok Y., Mehta R., Punia S. S., Hooda V., Malik R. K., Rana V. and Bellinder R. R. 2003. Residual Effects of Four Sulfonylurea Herbicides Applied in Wheat on Succeeding Crops in the Rotation. Indian Journal of Weed Science, 35 (3&4), 259- 261.
  • Atmakuru R., Elumalai T. P. and Sivanandam, S. 2007. Identification of Residues of Sulfosulfuron and Its Metabolites in Subsoil–Dissipation Kinetics and Factors Influencing the Stability and Degradation of Residues From Topsoil to Subsoil under Predominant Cropping Conditions. Environ. Monit. Assess., 130 (1-3), 519– 528.
  • Beckie H. J. and McKercher R. B. 1989. Soil Residual Properties of DPX–A7881 under Laboratory Conditions. Weed Science, 37 (3), 412–418.
  • Churchett J. D., Walkera S. R., Dunmalla T. A. and Jettner R. J. 1996. Crop Sensitivity to Residues of Three Sulfonylurea Herbicides in a Soil–Free System. Eleventh Australian Weeds Conference Proceedings, 59–61. http: / / www.caws.org.au / awc / 1996 / awc199610591.pdf (Erişim tarihi: 29.03.2010)
  • Eleftherohorinos I. K., Dhima K. and Vasilakoglou I. 2004. Activity, Adsorption, Mobility and Field Persistence of Sulfosulfuron in Soil. Phytoparasitica, 32 (3), 274–285.
  • Geier P. W. and Stahlman P. W. 2001. Grain Sorghum (Sorghum bicolor) and Sunflower (Helianthus annuus) Response to MKH 6561 and MON 37500 Residues in Soil. Weed Technology, 15 (4), 767–770.
  • Guo Z. Y., Tang M. Z., Yuan M. and Xu Z. 2006. Effects of Environmental Conditions and Microbes on Degradation of Iodosulfuron–methyl–sodium in Soil. Journal of Ecology and Rural Environment, 22 (3), 76–79.
  • Hernandez-Sevillano E., Villarroya M., Alonso-Prados J. L. and Garcia-Baudin J. M. 2001. Bioassay to Detect MON-37500 and Triasulfuron Residues in Soils. Weed Technology, 15 (3), 447-452.
  • Hollaway K. L., Kookana R. S., Mcquinnà D. J., Moerkerk M. R., Noy D. M. and Smal M. A. 1999. Comparison of Sulfonylurea Herbicide Residue Detection in Soil by Bioassay, Enzyme–Linked Immunosorbent Assay and HPLC. Weed Research, 39 (5), 383–397.
  • Kelly J. P. and Peeper T. F. 2003. Wheat (Triticum aestivum) and Rotational Crop Response to MON 37500. Weed Technology, 17 (1), 55-59.
  • Lyon D. J., Miller S. D. and Siefert–Higgins S. 2003. MON 37500 Soil Residues Affect Rotational Crops in the High Plains. Weed Technology, 17 (4), 792–798.
  • Maheswari S. T. and Ramesh A. 2007. Adsorption and Degradation of Sulfosulfuron in Soils. Environ. Monit. Assess., 127 (1-3), 97–103.
  • Moyer J. R. and Hamman W. M. 2001. Factors Affecting the Toxicity of MON 37500 Residues to Following Crops. Weed Technology, Volume 15 (1), 42–47.
  • Paolini R., Faustini F. and Fiobrillo A. 2004. Effetti Sulle Colture in Successione di Hussar OF Applicato su Grano Duro. Informatore Agrario, 60 (14), 81-84.
  • Rapparini G., Paci F. and Campagna G. 2003. Persistence and Percolation of Metsulfuron- methyl and Iodosulfuron-methyl Applied in Post-emergence of Wheat. 7. EWRS Mediterranean Symposium. Proceedings pp 105-106.
  • Rapparini G., Campagna G. and Geminiani E. 2004. Verifica della Percolazione e della Persistenza Sulle Colture di Successione di Iodosulfuron, Metsulfuron-metile e Triasulfuron Applicati in Pieno Campo su Frumento. Giornate Fitopatologische, Atti 1, 421-428.
  • Rodríguez N. 2005. Residualidad (Carryover) de Herbicidas y Mezclas. Publicación Técnica Anguil: EEA Anguil "Ing. Agr. Guillermo Covas", 61, 179-206.
  • Rouchaud J., Neus O., Eelen H. and Bulcke R. 2002. Soil Persistence and Metabolism of Iodosulfuron in Winter Wheat Crops. Mededelingen (Rijksuniversiteit te Gent. Fakulteit van de Landbouwkundige en Toegepaste Biologische Wetenschappen), 67 (3), 393–399.
  • Rouchaud J., Moulard C., Eelen H. and Bulcke R. 2003. Persistence of the Sulfonylurea Herbicide Iodosulfuron–Methyl in the Soil of Winter Wheat Crops. Toxicol. and Environ. Chem., 85 (4-6), 103–120.
  • Saha S. and Kulshrestha G. 2008. Hydrolysis Kinetics of the Sulfonylurea Herbicide Sulfosulfuron. International Journal of Environmental Analytical Chemistry, 88 (12), 891–898.
  • Shinn S. L., Thill D. C., Price W. J. and Ball D.A. 1998. Response of Downy Brome (Bromus tectorum) and Rotational Crops to MON 37500. Weed Technology, 12 (4), 690–698.
  • Singh G., Singh V. P. and Singh M. 2003. Studies on the Effect of Mesosulfuron and Iodosulfuron on Weeds in Wheat, Their Compatibility With Other Chemicals and Residual Effects on Succeeding Crops. Indian Journal of Weed Science, 35 (3-4), 173-178.
  • Sondhia S. 2009. Persistence and Leaching of Sulfosulfuron in Wheat (Triticum aestivum). Indian Journal of Agricultural Sciences, 79 (6), 484–487.
  • Sondhia S. and Singhai B. 2008. Persistence of Sulfosulfuron under Wheat Cropping System. Bull. Environ. Contam. Toxicol., 80 (5), 423–427.
  • Soukup J., Jursík M., Hamouz P. and Kohout V. 2002. Comparison of Sulfonylurea Herbicides from the Aspect of Phytotoxicity in Following Crops. 12th EWRS Symposium, Proceedings, pp 120-121
  • Stork P. and Hannah M. C. 1996. A Bioassay Method for Formulation Testing and Residue Studies of Sulfonylurea and Sulfonanylide Herbicides. Weed Research, 36 (3), 271– 281.
  • Tiryaki O. and Temur C. 2010. The Fate of Pesticide in the Environment. J. Biol. Environ. Sci., 4 (10), 29-38.
  • Tiryaki O., Yücel Ü. ve Sezen G. 2004. Biodegradation of Trifluralin in Harran Soil. Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 39 (5&6), 747–756.
  • Zadoks J. C., Chang T. T. and Konzak C. F. 1974. A Decimal Code for the Growth Stages of Cereals. Weed Research, 14 (6), 415-421.

Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron'un topraktaki kalıcılığının biyoassay ile araştırılması

Year 2011, Volume: 51 Issue: 3, 301 - 314, 22.04.2011

Abstract

Buğday alanlarında yabancı otlara karşı kullanılan sulfosulfuron ve mesosulfuron + iodosulfuron'un Orta Anadolu koşullarında topraktaki kalıcılığı biyoassay yöntemi ile araştırılmıştır. Bu herbisitler buğdayda 2 farklı alanda, 2 farklı dönemde ve 3 farklı dozda kullanılmış ve uygulamadan 3, 6, 12 ve 15. ay sonra topraktaki kalıntıları ayçiçeği fide biyoassayi ile belirlenmiştir. Sulfosulfuron ve mesosulfuron + iodosulfuron uygulanan alanlardaki herbisit kalıntıları zaman içerisinde azalmıştır. Herbisit uygulama dönemleri ve uygulama yapılan alanlar arasındaki fark her iki herbisit için de oldukça önemlidir. Herbisit uygulama zamanlarının topraktaki herbisitlerin kalıntısına etkisinin 3. ayda düşük seviyede iken 6, 12 ve 15. aylarda önemli düzeyde olduğu görülmüştür. Birinci alandaki herbisitlerin kalıntı düzeyleri ikinci alandakilerden daha yüksek bulunmuştur.

References

  • Alonso-Prados J. L., Hernandez-Sevillano E., Llanos S., Villarroya M. and Garcia-Baudin J. M. 2002. Effects of Sulfosulfuron Soil Residues on Barley (Hordeum vulgare), Sunflower (Helianthus annuus) and Common Vetch (Vicia sativa). Crop Protection, 21 (10), 1061-1066.
  • Ashok Y., Mehta R., Punia S. S., Hooda V., Malik R. K., Rana V. and Bellinder R. R. 2003. Residual Effects of Four Sulfonylurea Herbicides Applied in Wheat on Succeeding Crops in the Rotation. Indian Journal of Weed Science, 35 (3&4), 259- 261.
  • Atmakuru R., Elumalai T. P. and Sivanandam, S. 2007. Identification of Residues of Sulfosulfuron and Its Metabolites in Subsoil–Dissipation Kinetics and Factors Influencing the Stability and Degradation of Residues From Topsoil to Subsoil under Predominant Cropping Conditions. Environ. Monit. Assess., 130 (1-3), 519– 528.
  • Beckie H. J. and McKercher R. B. 1989. Soil Residual Properties of DPX–A7881 under Laboratory Conditions. Weed Science, 37 (3), 412–418.
  • Churchett J. D., Walkera S. R., Dunmalla T. A. and Jettner R. J. 1996. Crop Sensitivity to Residues of Three Sulfonylurea Herbicides in a Soil–Free System. Eleventh Australian Weeds Conference Proceedings, 59–61. http: / / www.caws.org.au / awc / 1996 / awc199610591.pdf (Erişim tarihi: 29.03.2010)
  • Eleftherohorinos I. K., Dhima K. and Vasilakoglou I. 2004. Activity, Adsorption, Mobility and Field Persistence of Sulfosulfuron in Soil. Phytoparasitica, 32 (3), 274–285.
  • Geier P. W. and Stahlman P. W. 2001. Grain Sorghum (Sorghum bicolor) and Sunflower (Helianthus annuus) Response to MKH 6561 and MON 37500 Residues in Soil. Weed Technology, 15 (4), 767–770.
  • Guo Z. Y., Tang M. Z., Yuan M. and Xu Z. 2006. Effects of Environmental Conditions and Microbes on Degradation of Iodosulfuron–methyl–sodium in Soil. Journal of Ecology and Rural Environment, 22 (3), 76–79.
  • Hernandez-Sevillano E., Villarroya M., Alonso-Prados J. L. and Garcia-Baudin J. M. 2001. Bioassay to Detect MON-37500 and Triasulfuron Residues in Soils. Weed Technology, 15 (3), 447-452.
  • Hollaway K. L., Kookana R. S., Mcquinnà D. J., Moerkerk M. R., Noy D. M. and Smal M. A. 1999. Comparison of Sulfonylurea Herbicide Residue Detection in Soil by Bioassay, Enzyme–Linked Immunosorbent Assay and HPLC. Weed Research, 39 (5), 383–397.
  • Kelly J. P. and Peeper T. F. 2003. Wheat (Triticum aestivum) and Rotational Crop Response to MON 37500. Weed Technology, 17 (1), 55-59.
  • Lyon D. J., Miller S. D. and Siefert–Higgins S. 2003. MON 37500 Soil Residues Affect Rotational Crops in the High Plains. Weed Technology, 17 (4), 792–798.
  • Maheswari S. T. and Ramesh A. 2007. Adsorption and Degradation of Sulfosulfuron in Soils. Environ. Monit. Assess., 127 (1-3), 97–103.
  • Moyer J. R. and Hamman W. M. 2001. Factors Affecting the Toxicity of MON 37500 Residues to Following Crops. Weed Technology, Volume 15 (1), 42–47.
  • Paolini R., Faustini F. and Fiobrillo A. 2004. Effetti Sulle Colture in Successione di Hussar OF Applicato su Grano Duro. Informatore Agrario, 60 (14), 81-84.
  • Rapparini G., Paci F. and Campagna G. 2003. Persistence and Percolation of Metsulfuron- methyl and Iodosulfuron-methyl Applied in Post-emergence of Wheat. 7. EWRS Mediterranean Symposium. Proceedings pp 105-106.
  • Rapparini G., Campagna G. and Geminiani E. 2004. Verifica della Percolazione e della Persistenza Sulle Colture di Successione di Iodosulfuron, Metsulfuron-metile e Triasulfuron Applicati in Pieno Campo su Frumento. Giornate Fitopatologische, Atti 1, 421-428.
  • Rodríguez N. 2005. Residualidad (Carryover) de Herbicidas y Mezclas. Publicación Técnica Anguil: EEA Anguil "Ing. Agr. Guillermo Covas", 61, 179-206.
  • Rouchaud J., Neus O., Eelen H. and Bulcke R. 2002. Soil Persistence and Metabolism of Iodosulfuron in Winter Wheat Crops. Mededelingen (Rijksuniversiteit te Gent. Fakulteit van de Landbouwkundige en Toegepaste Biologische Wetenschappen), 67 (3), 393–399.
  • Rouchaud J., Moulard C., Eelen H. and Bulcke R. 2003. Persistence of the Sulfonylurea Herbicide Iodosulfuron–Methyl in the Soil of Winter Wheat Crops. Toxicol. and Environ. Chem., 85 (4-6), 103–120.
  • Saha S. and Kulshrestha G. 2008. Hydrolysis Kinetics of the Sulfonylurea Herbicide Sulfosulfuron. International Journal of Environmental Analytical Chemistry, 88 (12), 891–898.
  • Shinn S. L., Thill D. C., Price W. J. and Ball D.A. 1998. Response of Downy Brome (Bromus tectorum) and Rotational Crops to MON 37500. Weed Technology, 12 (4), 690–698.
  • Singh G., Singh V. P. and Singh M. 2003. Studies on the Effect of Mesosulfuron and Iodosulfuron on Weeds in Wheat, Their Compatibility With Other Chemicals and Residual Effects on Succeeding Crops. Indian Journal of Weed Science, 35 (3-4), 173-178.
  • Sondhia S. 2009. Persistence and Leaching of Sulfosulfuron in Wheat (Triticum aestivum). Indian Journal of Agricultural Sciences, 79 (6), 484–487.
  • Sondhia S. and Singhai B. 2008. Persistence of Sulfosulfuron under Wheat Cropping System. Bull. Environ. Contam. Toxicol., 80 (5), 423–427.
  • Soukup J., Jursík M., Hamouz P. and Kohout V. 2002. Comparison of Sulfonylurea Herbicides from the Aspect of Phytotoxicity in Following Crops. 12th EWRS Symposium, Proceedings, pp 120-121
  • Stork P. and Hannah M. C. 1996. A Bioassay Method for Formulation Testing and Residue Studies of Sulfonylurea and Sulfonanylide Herbicides. Weed Research, 36 (3), 271– 281.
  • Tiryaki O. and Temur C. 2010. The Fate of Pesticide in the Environment. J. Biol. Environ. Sci., 4 (10), 29-38.
  • Tiryaki O., Yücel Ü. ve Sezen G. 2004. Biodegradation of Trifluralin in Harran Soil. Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 39 (5&6), 747–756.
  • Zadoks J. C., Chang T. T. and Konzak C. F. 1974. A Decimal Code for the Growth Stages of Cereals. Weed Research, 14 (6), 415-421.
There are 30 citations in total.

Details

Primary Language Turkish
Journal Section Makaleler
Authors

Ahmet Tansel Serim

A. Serim

Salih Maden This is me

Publication Date April 22, 2011
Submission Date April 22, 2011
Published in Issue Year 2011 Volume: 51 Issue: 3

Cite

APA Serim, A. T., Serim, A., & Maden, S. (2011). Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması. Plant Protection Bulletin, 51(3), 301-314.
AMA Serim AT, Serim A, Maden S. Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması. Plant Protection Bulletin. October 2011;51(3):301-314.
Chicago Serim, Ahmet Tansel, A. Serim, and Salih Maden. “Orta Anadolu Bölgesi koşullarında Sulfosulfuron Ve Mesosulfuron + Iodosulfuron’un Topraktaki kalıcılığının Biyoassay Ile araştırılması”. Plant Protection Bulletin 51, no. 3 (October 2011): 301-14.
EndNote Serim AT, Serim A, Maden S (October 1, 2011) Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması. Plant Protection Bulletin 51 3 301–314.
IEEE A. T. Serim, A. Serim, and S. Maden, “Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması”, Plant Protection Bulletin, vol. 51, no. 3, pp. 301–314, 2011.
ISNAD Serim, Ahmet Tansel et al. “Orta Anadolu Bölgesi koşullarında Sulfosulfuron Ve Mesosulfuron + Iodosulfuron’un Topraktaki kalıcılığının Biyoassay Ile araştırılması”. Plant Protection Bulletin 51/3 (October 2011), 301-314.
JAMA Serim AT, Serim A, Maden S. Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması. Plant Protection Bulletin. 2011;51:301–314.
MLA Serim, Ahmet Tansel et al. “Orta Anadolu Bölgesi koşullarında Sulfosulfuron Ve Mesosulfuron + Iodosulfuron’un Topraktaki kalıcılığının Biyoassay Ile araştırılması”. Plant Protection Bulletin, vol. 51, no. 3, 2011, pp. 301-14.
Vancouver Serim AT, Serim A, Maden S. Orta Anadolu Bölgesi koşullarında Sulfosulfuron ve Mesosulfuron + Iodosulfuron’un topraktaki kalıcılığının biyoassay ile araştırılması. Plant Protection Bulletin. 2011;51(3):301-14.

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